Research on 180° conduction of brushless dc motor driven by high frequency link inverter

Brushless DC motor in 180° conduction operation may occur the phenomenon the same leg short, in order to solve this problem, the traditional non-isolated three-phase inverter is replaced, and the high-frequency link matrix inverter is studied for driving brushless DC motor 180° conduction operation. In this paper, the non-isolated three-phase inverter is replaced for the brushless DC motor in the 180° conduction operation. Based on the decoupling idea, an HPWM modulation strategy for brushless DC motor load is used. There is 30 electrical angle difference between the brushless DC motor 180° conduction switch drive signal and the hall signal, and the hall signal can be directly logic synthesis of the minimum signal width of 60 electrical angle, so 180° conduction switch the driving signal can not be directly synthesized by the hall signal, based on this the first three times the frequency of the hall signal and then double the frequency of the switch drive signal synthesis method is proposed. The working mode of the inverter in a sector is analyzed in detail, due to the switch opening and shut off, the energy passing through the transformer between power supply and motor winding, and the synthesis method of 180° conduction drive signal is described. The correctness of the method is verified on the basis of experiment.

[1]  Kun Zhang,et al.  A Novel Absolute Value Logic SPWM Control Strategy Based on De-Re-Coupling Idea for High Frequency Link Matrix Rectifier , 2013, IEEE Transactions on Industrial Informatics.

[2]  Swamidoss Sathiakumar,et al.  180-Degree Commutation System of Permanent Magnet Brushless DC Motor Drive Based on Speed and Current Control , 2009, 2009 Second International Conference on Intelligent Computation Technology and Automation.

[3]  N. Samoylenko,et al.  Comparison of Brushless DC Motor Drives with 180/120-Degree Inverter Systems , 2007, 2007 Canadian Conference on Electrical and Computer Engineering.

[4]  M. V. Mudrov,et al.  Electric drive system power simulator , 2016, 2016 18th European Conference on Power Electronics and Applications (EPE'16 ECCE Europe).

[5]  Zhaoyang Yan,et al.  An Integration SPWM Strategy for High-Frequency Link Matrix Converter With Adaptive Commutation in One Step Based on De-Re-Coupling Idea , 2012, IEEE Transactions on Industrial Electronics.

[6]  Kamal Al-Haddad,et al.  A single sensor based bridgeless landsman PFC converter fed BLDC motor drive , 2015, 2015 IEEE Industry Applications Society Annual Meeting.

[7]  Weiming Zhou,et al.  Double closed loop sliding mode PID control system for BLDCM of pure electric vehicle , 2016, CCC 2016.

[8]  Bangcheng Han,et al.  Active Damping Stabilization for High-Speed BLDCM Drive System Based on Band-Pass Filter , 2017, IEEE Transactions on Power Electronics.

[9]  Huang Zhi-feng The Direct Self Control of Brushless DC Motor Based on the Hexagon Locus of Stator Flux Linkage , 2007 .